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Motorized, untethered soft robots <i>via</i> 3D printed auxetics

Pranav Kaarthik, Francesco L. Sanchez, James Avtges, Ryan L. Truby

Year
2022
Citations
25

Abstract

) for 65 min, all while carrying a payload of at least 1.5 kg. We compare our soft robots' capabilities to those of previously reported untethered, terrestrial systems and find that our motorized HSAs lead to the second highest operating time with an above average velocity. We anticipate that these methods will open new avenues for designing untethered soft robots with the robustness, operating times, and payload capacities required for future fundamental investigations in embodied intelligence and adaptive, physical learning.

Keywords

Payload (computing)RobotActuatorSoft roboticsSoft materialsRoboticsControllabilityEngineeringRobustness (evolution)Scalability

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